Author
Listed:
- Rui Che
(Clemson University
Clemson University Center for Human Genetics)
- Monireh Panah
(Clemson University
Clemson University Center for Human Genetics)
- Bhoomi Mirani
(Clemson University
Clemson University Center for Human Genetics)
- Krista Knowles
(Clemson University
Clemson University Center for Human Genetics)
- Anastacia Ostapovich
(Yale University)
- Debarati Majumdar
(Clemson University
Clemson University Center for Human Genetics)
- Xiaotong Chen
(Clemson University)
- Joseph DeSimone
(Clemson University)
- William White
(Clemson University)
- Megan Noonan
(Clemson University)
- Hong Luo
(Clemson University)
- Andrei Alexandrov
(Clemson University
Clemson University Center for Human Genetics)
Abstract
Despite critical roles in diseases, human pathways acting on strictly nuclear non-coding RNAs have been refractory to forward genetics. To enable their forward genetic discovery, we developed a single-cell approach that “Mirrors” activities of nuclear pathways with cytoplasmic fluorescence. Application of Mirror to two nuclear pathways targeting MALAT1’s 3′ end, the pathway of its maturation and the other, the degradation pathway blocked by the triple-helical Element for Nuclear Expression (ENE), identified nearly all components of three complexes: Ribonuclease P and the RNA Exosome, including nuclear DIS3, EXOSC10, and C1D, as well as the Nuclear Exosome Targeting (NEXT) complex. Additionally, Mirror identified DEAD-box helicase DDX59 associated with the genetic disorder Oral-Facial-Digital syndrome (OFD), yet lacking known substrates or roles in nuclear RNA degradation. Knockout of DDX59 exhibits stabilization of the full-length MALAT1 with a stability-compromised ENE and increases levels of 3′-extended forms of small nuclear RNAs. It also exhibits extensive retention of minor introns, including in OFD-associated genes, suggesting a mechanism for DDX59 association with OFD. Mirror efficiently identifies pathways acting on strictly nuclear non-coding RNAs, including essential and indirectly-acting components, and as a result can uncover unexpected links to human disease.
Suggested Citation
Rui Che & Monireh Panah & Bhoomi Mirani & Krista Knowles & Anastacia Ostapovich & Debarati Majumdar & Xiaotong Chen & Joseph DeSimone & William White & Megan Noonan & Hong Luo & Andrei Alexandrov, 2025.
"Identification of human pathways acting on nuclear non-coding RNAs using the Mirror forward genetic approach,"
Nature Communications, Nature, vol. 16(1), pages 1-15, December.
Handle:
RePEc:nat:natcom:v:16:y:2025:i:1:d:10.1038_s41467-025-59998-3
DOI: 10.1038/s41467-025-59998-3
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